DocumentCode :
622933
Title :
Electromagnetic modelling of material loaded cavity resonators with a filling hole for complex resonant frequency determination
Author :
Kilic, E. ; Schnattinger, Georg ; Siart, Uwe ; Eibert, Thomas F.
Author_Institution :
Lehrstuhl fur Hochfrequenztech., Tech. Univ. Munchen, Munich, Germany
fYear :
2013
fDate :
20-24 May 2013
Firstpage :
726
Lastpage :
729
Abstract :
The electromagnetic modelling of cavity resonators loaded with dielectric material is important with respect to corresponding material measurements. In this paper, a variational technique is employed to determine the complex resonant frequencies of the loaded cavity resonator. Inhomogeneous impedance boundary conditions are considered to take the effects of lossy walls and the filling hole of the resonator on the resonance into account. An eigenmode expansion of the magnetic field appearing in the variational formulation results in a nonlinear eigenvalue problem in terms of the complex resonant frequency. An iterative scheme is employed to solve the nonlinear eigenvalue problem. Given an initial guess, the nonlinear eigenvalue problem is approximated by a quadratic eigenvalue problem. The approximated quadratic eigenvalue problem is transformed to a generalized eigenvalue problem that is solved by using the generalized Schur decomposition. Also, the inverse problem, where the complex wavenumber is measured and the material parameter is to be determined, is discussed. In order to show the capabilities of the proposed method, the computed resonant frequencies are compared with measured data.
Keywords :
approximation theory; cavity resonators; dielectric materials; eigenvalues and eigenfunctions; electromagnetic fields; frequency measurement; inhomogeneous media; inverse problems; iterative methods; microwave materials; microwave measurement; microwave resonators; variational techniques; complex resonant frequency determination; complex wavenumber measurement; dielectric material; eigenmode expansion; electromagnetic modelling; filling hole; generalized Schur decomposition; generalized eigenvalue problem; inhomogeneous impedance boundary condition; inverse problem; iterative scheme; lossy wall effect; magnetic field; material loaded cavity resonator; material measurement; material parameter determination; nonlinear eigenvalue problem; quadratic eigenvalue problem approximation; variational formulation; Cavity resonators; Eigenvalues and eigenfunctions; Frequency measurement; Impedance; Materials; Permittivity; Resonant frequency;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electromagnetic Theory (EMTS), Proceedings of 2013 URSI International Symposium on
Conference_Location :
Hiroshima
Print_ISBN :
978-1-4673-4939-0
Type :
conf
Filename :
6565842
Link To Document :
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